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首页> 外文期刊>Chemical engineering journal >Comparison of UV/H2O2 based AOP as an end treatment or integrated with biological degradation for treating landfill leachates
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Comparison of UV/H2O2 based AOP as an end treatment or integrated with biological degradation for treating landfill leachates

机译:基于UV / H2O2的AOP作为最终处理或与生物降解相结合来处理垃圾渗滤液的比较

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摘要

The application of a biological treatment together with a chemical oxidation process was investigated. In particular, the effectiveness of the biological treatment followed by a UV/H2O2-based advanced oxidation process (AOP) used as an end treatment was compared with that in which the same AOP was integrated with biological degradation for treating a medium age sanitary landfill leachate. The results show that better performance with removal efficiencies higher than 80% for all investigating parameters was obtained when AOP was integrated with the biological treatment, thus allowing the discharge limits to be met. This was due to the biological removal of the biodegradable compounds produced by UV/H2O2 treatment. Instead, UV/H2O2-based AOP biodegradability enhancement gave no advantage when it was used as an end treatment. Finally, the results show that H2O2 alone (i.e., without UV power) was quite ineffective either as a mineralizing or as a biodegradability enhancing agent and that the only reactive species was essentially the hydroxyl free radical OH'.
机译:研究了生物处理和化学氧化工艺的应用。尤其是,将生物处理的有效性与随后的基于UV / H2O2的先进氧化工艺(AOP)用作最终处理的效果进行了比较,在该方法中,将同一AOP与生物降解相结合来处理中年卫生垃圾渗滤液。结果表明,将AOP与生物处理结合使用时,所有研究参数的去除效率均高于80%,性能更好,因此可以满足排放限值。这是由于通过UV / H2O2处理产生的可生物降解化合物的生物去除。取而代之的是,基于UV / H2O2的AOP可生物降解性增强在用作最终处理时没有任何优势。最后,结果表明,单独的H 2 O 2(即没有UV能量)作为矿化剂或生物降解性增强剂是完全无效的,并且唯一的反应性种类基本上是羟基自由基OH'。

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